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脂多糖(LPS)可导致柯克斯体(Coxiella burnetii)致病性减弱,从而影响 p38α-MAPK/Vps41-HOPS 对其的刺激,阻止其向溶酶体运输。

Impaired stimulation of p38α-MAPK/Vps41-HOPS by LPS from pathogenic Coxiella burnetii prevents trafficking to microbicidal phagolysosomes.

机构信息

CNRS UMR 7278, IRD198, INSERM U1095, Aix-Marseille Université, 27 Bd Jean Moulin 13385 Marseille Cedex 05, France.

出版信息

Cell Host Microbe. 2012 Dec 13;12(6):751-63. doi: 10.1016/j.chom.2012.10.015.

Abstract

Variations in lipopolysaccharide (LPS), a bacterial outer membrane component, determine virulence of the obligate intracellular bacterium Coxiella burnetii, but the underlying mechanisms are unknown. We find that while avirulent C. burnetii LPS (avLPS) stimulates host p38α-MAPK signaling required for proper trafficking of bacteria containing compartments to lysosomes for destruction, pathogenic C. burnetii LPS (vLPS) does not. The defect in vLPS and pathogenic C. burnetii targeting to degradative compartments involves an antagonistic engagement of TLR4 by vLPS, lack of p38α-MAPK-driven phosphorylation, and block in recruitment of the homotypic fusion and protein-sorting complex component Vps41 to vLPS-containing vesicles. An upstream activator of p38α-MAPK or phosphomimetic mutant Vps41-S796E expression overrides the inhibition, allowing vLPS and pathogenic C. burnetii targeting to phagolysosomes. Thus, p38α-MAPK and its crosstalk with Vps41 play a central role in trafficking bacteria to phagolysosomes. Pathogenic C. burnetii has evolved LPS variations to evade this host response and thrive intracellularly.

摘要

脂多糖(LPS)是一种细菌外膜成分,其变异决定了专性细胞内细菌柯克斯体的毒力,但其中的潜在机制尚不清楚。我们发现,虽然无致病力的柯克斯体 LPS(avLPS)会刺激宿主 p38α-MAPK 信号通路,该信号通路对于含有隔室的细菌向溶酶体的正确运输和破坏是必需的,但致病性的柯克斯体 LPS(vLPS)则不会。vLPS 和致病性柯克斯体靶向降解隔室的缺陷涉及 vLPS 对 TLR4 的拮抗作用、缺乏 p38α-MAPK 驱动的磷酸化以及同源融合和蛋白质分拣复合物成分 Vps41 到含有 vLPS 的囊泡的募集受阻。p38α-MAPK 的上游激活剂或磷酸化模拟突变体 Vps41-S796E 的表达可以克服这种抑制,从而允许 vLPS 和致病性柯克斯体靶向吞噬溶酶体。因此,p38α-MAPK 及其与 Vps41 的相互作用在将细菌运输到吞噬溶酶体中发挥着核心作用。致病性柯克斯体已经进化出 LPS 变异,以逃避这种宿主反应并在细胞内茁壮成长。

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